Area of research
Plant Science · Soil Science
Research interest
Research interests include Chemistry, Shoot, Environmental science, Biology, Oryza sativa, and Agronomy.
Impact of climate change on arsenic concentrations in paddy rice and the associated dietary health risks in Asia: an experimental and modelling study
CO2 fertilization effect on rice growth is constrained by soil heavy metal contamination
Long‐Term Elevated CO <sub>2</sub> Improves Soil Health and Rice Yields in Paddy Fields
Driving factors of variation in fertilizer nitrogen recovery efficiency in maize cropping systems across China and its microbial mechanism
Auxin is involved in cadmium accumulation in rice through controlling nitric oxide production and the ability of cell walls to bind cadmium
Salylic acid minimize cadmium accumulation in rice through regulating the fixation capacity of the cell wall to cadmium
Decrease in hemicellulose content and its retention of iron contributes to phosphorus deficiency alleviated iron deficiency in Arabidopsis thaliana
Involvement of the 4-coumarate:coenzyme A ligase 4CL4 in rice phosphorus acquisition and rhizosphere microbe recruitment via root growth enlargement
Melatonin reduces cadmium accumulation via mediating the nitric oxide accumulation and increasing the cell wall fixation capacity of cadmium in rice
Nitrogen Source Preference in Maize at Seedling Stage Is Mainly Dependent on Growth Medium pH
Yield gap of rice genotypes under N and P deficiencies: Evidence from differential recruitment of bacterial keystone taxa in the rhizosphere
Ammonium Alleviates Manganese Toxicity and Accumulation in Rice by Down-Regulating the Transporter Gene OsNramp5 Through Rhizosphere Acidification
Effective reduction of cadmium accumulation in rice grain by expressing OsHMA3 under the control of the OsHMA2 promoter
Boron Alleviates Aluminum Toxicity by Promoting Root Alkalization in Transition Zone via Polar Auxin Transport